US4632122A - Method and apparatus for conducting brain function diagnostic test - Google Patents
Method and apparatus for conducting brain function diagnostic test Download PDFInfo
- Publication number
- US4632122A US4632122A US06/726,729 US72672985A US4632122A US 4632122 A US4632122 A US 4632122A US 72672985 A US72672985 A US 72672985A US 4632122 A US4632122 A US 4632122A
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- US
- United States
- Prior art keywords
- headset
- electrode
- electrodes
- subject
- bellows
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/43—Detecting, measuring or recording for evaluating the reproductive systems
- A61B5/4306—Detecting, measuring or recording for evaluating the reproductive systems for evaluating the female reproductive systems, e.g. gynaecological evaluations
- A61B5/4343—Pregnancy and labour monitoring, e.g. for labour onset detection
- A61B5/4362—Assessing foetal parameters
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/24—Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
- A61B5/25—Bioelectric electrodes therefor
- A61B5/279—Bioelectric electrodes therefor specially adapted for particular uses
- A61B5/28—Bioelectric electrodes therefor specially adapted for particular uses for electrocardiography [ECG]
- A61B5/283—Invasive
- A61B5/288—Invasive for foetal cardiography, e.g. scalp electrodes
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/24—Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
- A61B5/25—Bioelectric electrodes therefor
- A61B5/279—Bioelectric electrodes therefor specially adapted for particular uses
- A61B5/291—Bioelectric electrodes therefor specially adapted for particular uses for electroencephalography [EEG]
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/24—Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
- A61B5/316—Modalities, i.e. specific diagnostic methods
- A61B5/318—Heart-related electrical modalities, e.g. electrocardiography [ECG]
- A61B5/321—Accessories or supplementary instruments therefor, e.g. cord hangers
- A61B5/324—Means for providing electrolytes, e.g. syringes
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B2562/00—Details of sensors; Constructional details of sensor housings or probes; Accessories for sensors
- A61B2562/02—Details of sensors specially adapted for in-vivo measurements
- A61B2562/0209—Special features of electrodes classified in A61B5/24, A61B5/25, A61B5/283, A61B5/291, A61B5/296, A61B5/053
- A61B2562/0217—Electrolyte containing
Definitions
- the present invention relates generally to method and apparatus for conducting a brain function diagnostic test and, more particularly, to such method and apparatus which can be used to accurately and repeatedly measure a subject's brain waves during electroencephalography.
- An electroencephalograph is a clinical, multichannel instrument used to measure and display the brain waves of a subject.
- the subject's brain waves are monitored in such an EEG by the use of a number of individual electrodes which are attached to the scalp of the subject in a predetermined pattern or montage which is well known in the art.
- the electrical activity (brain waves) generated by the subject's brain are detected by these electrodes and transmitted to external monitoring devices where they are amplified and displayed for viewing and diagnostic interpretation.
- the brain waves were displayed using a multichannel recorder with each trace made by a galvanometer-type pen motor. More recently, however, the EEG systems employ a microcomputer into which the brain waves are fed for analysis and display on the computer's accompanying CRT. The computer automatically records, analyzes and artifacts the EEG and prepares a detailed report with the tracing of the EEG. Through the use of the computer's analysis of the brain waves, it is now possible to graphically "map" the brain on the computer's CRT to check for abnormalities relative to an appropriate reference data base.
- EEG testing is used not only to detect abnormalities in brain function but, in addition, the therapeutic monitoring of central nervous system (CNS)-effective drugs such as, for example, anti-epileptics, cerebrovascular compounds, psychotropics, etc.
- CNS central nervous system
- EEG testing has also been used clinically to determine the CNS toxicity of peripheral drugs such as cardiovascular drugs, antidepressants, anxiolytics, antihistamines and analgesics; to select the right psychotropic for a particular patient; and to determine the development of a progressive cerebral illness by repetitive quantitive EEG testing.
- EEG testing has been used to establish quantitative CNS effects of drugs after single or multiple doses, for classifying psychotropic properties of drugs; for predicting the "therapeutic window" of psychotropics; and for determining the potency of CNS-effective drugs and determining appropriate dose levels.
- EEG systems include those systems described, for example, in U.S. Pat. Nos. 3,518,986 which issued on July 7, 1970 to T. C. Woods et al. for Patient Monitoring Safety System; 3,859,988 which issued on Jan. 14, 1975 to C. C. Lencioni, Jr. for Open Lead Testing System for EEG; 4,202,352 which issued on May 13, 1980 to L. B. Smith et al.; 4,213,465 which issued on July 22, 1980 to G. Renheim for Electroencephalograph; 4,214,591 which issued on July 29, 1980 to K. Sato et al. for Brain Wave Analyzing System and Method; 4,235,511 which issued on Dec. 2, 1980 to P. J. Loeb for Electroencephalograph; Re.
- Such prior art electrodes include those electrodes which are described in U.S. Pat. Nos. 2,872,926 which issued on Feb. 10, 1959 to J. E. Alderman for Electroencephalographic Electrode; 3,151,619 which issued on Oct. 6, 1964 to G. H. Sullivan for Electrode for Electromedical Equipment; 3,170,459 which issued on Feb. 23, 1965 to C. G. Phipps et al. for Bio-Medical Instrumentation Electrode; 3,187,745 which issued on June 8, 1965 to J. N. Baum et al. for Electrodes; 3,295,515 which issued on Jan. 3, 1967 to A. R. Kahn for Electrode Assembly; 3,469,577 which issued on Sept. 30, 1969 to J. A. R.
- a headset unit which includes the plurality of electrodes required to conduct an EEG test.
- the present invention in brief summary, comprises method and apparatus for use in conducting an electroencephalographic (EEG) test where the apparatus includes a headset suitable for placement on the head of a subject to be tested.
- EEG electroencephalographic
- a plurality of electrodes are mounted on the headset at pre-determined positions about the headset.
- the electrodes are preferably mounted to the headset by the use of a resilient material, preferably a resilient mesh such as a plastic mesh, which is bonded or otherwise fastened to both the electrode assembly and to the headset.
- Each of the electrode assemblies includes a separate air bellows for displacing the electrode in the direction of the subject's head upon the application of additional air pressure into the cylinder.
- Each bellows arrangement is provided within a cylinder for effecting displacement of the electrode. In essence, the bellows containing structure provides positive orientation control of the electrode independent of its displaced position.
- Means are further provided for dispensing a predetermined amount of an electrolytic material from an external source of electrolyte, through the electrode, to the point of contact between the electrode and the subject's head.
- FIG. 1 is a perspective view of the headset of the present invention in combination with external means for adjusting the electrodes;
- FIG. 2 is a bottom view of the headset of the present invention
- FIG. 3 is a sectional view of an electrode used in the headset of the present invention.
- FIG. 4 is a sectional view taken along line IV--IV of FIG. 3.
- the headset of the present invention includes a helmet liner 12 with a plurality of electrodes 20 placed at pre-determined positions about the liner 12.
- Liner 12 is preferably fabricated from a rigid, thermoplastic material and resembles a modified version of a hockey or football helmet.
- a suspension system having a resilient, head-encircling headband may be provided within the liner 12 to assist in orientation of the headset 10 on the subject being tested as well as to increase its comfort when worn for prolonged periods of time.
- Electrodes 20 are provided at fixed locations about the headset 10 and are positioned in accordance with standard electroencephalographic procedures (International 10-20 System) for performing conventional EEG testing.
- a like number of apertures 22 are provided in the liner 12 at the positions where the electrodes 20 are to be inserted.
- Each electrode 20 is retained within its respective aperture 22 by a resilient mesh 24 which encircles the electrode 20 and which may be adhesively bonded to the liner 12.
- an electrolyte gel contact can be achieved with the scalp with only minimal pressure of the electrode 20 against the subject's scalp.
- An additional advantage of using a mesh 24 for resiliently securing the electrodes 20 is that it permits ventilating air through the liner 12 thus making the headset 10 more comfortable to wear for prolonged periods of time thereby avoiding problems arising from scalp perspiration which is conductive due to its salt content.
- the resilient mesh 24 may be replaced with solid resilient material such as rubber, fabric or a thermoplastic material which would still provide the degree of resilience which the electrodes 20 require to position the electrodes as required by the International 10-20 System with respect to the subject's skull.
- the electrode 20 includes an outer cylinder 30 preferably fabricated from a clear thermoplastic material such as, for example, Lucite or a polystyrene.
- the cylinder 30 is adapted to be located within each aperture 22 of the liner 12 and is captured therein by resilient mesh 24 which adhesively bonded about the outer periphery of the cylinder 30 below a circular lip 38 which is provided about the outer periphery of the cylinder 30.
- the cylinder is sealed at its upper end 31 by an end cap 32 and a top cap 33 is provided in end cap 32.
- a center aperture 34 is provided through both the end cap 32 and the top cap 33.
- a post 40 is adhesively bonded to both the end cap 32 and the top cap 33 and extends downwardly into the interior of the cylinder 30. Loss of air pressure being supplied to any electrode results in the withdrawal of all of the electrodes and thus there is provided a fail safe system.
- a hollow piston rod 42 having an upper end 43A and a lower end 43B and a center plug 44 is provided within the cylinder 30.
- Piston rod 42 is adhesively bonded about its outer periphery to bottom cap 35 which includes a center aperture 35A through which the piston rod 42 passes, as well as an air inlet 35B and an air outlet 35C.
- Bottom cap 35 integrally incorporates a shoulder 46 to effect a sealing plane for the bellows 60.
- An electrode contact 50 is further provided having an upper end 51 adapted to engage the piston rod 42 and a lower end 50A adapted to contact the scalp of the subject being tested.
- the upper end 51 of the electrode contact 50 is captured within and bonded to the lower end 43B of the hollow piston rod 42.
- the electrode contact 50 will also travel a like amount toward the scalp of the subject.
- a flexible, compressible bellows 60 is provided about the piston rod 42 within the cylinder 30.
- the bellows 60 is preferably constructed from synthetic or natural rubber, neoprene or high density polyethylene. Bellows 60 is adhesively bonded along its bottom edge 60A to shoulder 46 and is further bonded at its top edge 60B to top shoulder 62 which forms part of the piston rod 42. In this manner, the space between the bellows 60 and the piston rod 42 needs no additional sealing, i.e., it is open to the atmosphere enhancing freedom and movement of the electrode and therewith its positioning on the scalp.
- the bellows 60 arrangement within the cylinder 30 serves as a collapsible spring for moving the electrode tip assembly 50 toward and away from the subject's scalp to insure that proper pressure is maintained against the scalp during the EEG testing.
- Movement of the piston rod 42 carrying the electrode assembly 50 is effected by controlling the amount of air pressure applied to the cylinder through the air inlet 35B from an external source of compressed air or other non-toxic gas (not shown) by air conduits 70 which are interconnected in such a manner that the air pressure is uniformly introduced into all of the air inlets 35B substantially simultaneously.
- the bellows 60 compresses which causes the piston rod 42 to move downward toward the subject's scalp along with the electrode tip contact 50.
- the electrode tip contact 50 is moved toward teh subject's scalp and will thereby exert a uniform amount of pressure against the scalp in order to insure proper contact with the scalp to insure proper EEG readings.
- Electrode tip contact 50 preferably fabricated from an electrically conductive material such as, for example, copper, includes a center aperture or residence cavity 52 which is open at the tapered open lower end 50A of the contact to permit the introduction of an electrolyte solution directly to the scalp of the subject through the lower end 50A.
- An inlet 53 is provided through the side of the contact 50, communicating with the center aperture 52 at one end and with a conduit 53 which is connected to an external source of electrolyte 100 (shown in FIG. 1) at its opposite end.
- the conduits 53 to each electrode tip contact 50 are gathered and fed through umbilical conduit 110 to the external source of electrolyte 100 thus permitting the substantially simultaneous introduction of electrolyte to all electrodes.
- Electrode Gel marketed by Parker Laboratories which is a buffered, non-corrosive electrolytic material.
- the Electrical Gel is diluted to permit passage through commercially available, non-corrosive, non-conductive tubing.
- the electrode tip contacts 50 are also electrically connected in parallel by the use of electrically conductive copper leads 80 which are adapted to transmit the signal from the subject's brain wave to external instrumentation means (not shown) for monitoring and analyzing the signals and for generating the EEG results.
- the leads 80 from each contact 50 are gathered together and fed out of the headset 10 to the external instrumentation means through a contact umbilical conduit 120.
- the operation of the headset 10 of the present invention is as follows.
- the headset 10 is placed on a subject's head. Due to the pre-fixed positioning of the electrodes 20 within the the headset, only minor adjustment is required to insure proper alignment.
- a chinstrap may be used, if desired to secure the headset 10 in place and to insure that it will be maintained in place during the testing.
- the electrode contacts 50 are then pressurized by the movement of the piston by air introduced into the air inlets 35B. Scalp contact will be held at a pressure of between about 1 and about 3 psi. As the bellows size is reduced, the pressure can be increased proportionately, the only limit being the subject's pain threshold.
- the electrolytic gel material is then introduced from the external electrolyte source through conduit 110 and pre-measured amounts of the material, typically between one and four drops, are then delivered to the center aperture 52 of each electrode contact 50, passing out of the open lower end 50A of the contact 50 to insure better electrical contact with the subject's scalp.
- the EEG test may then be run.
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Veterinary Medicine (AREA)
- Physics & Mathematics (AREA)
- Public Health (AREA)
- Biophysics (AREA)
- Pathology (AREA)
- Engineering & Computer Science (AREA)
- General Health & Medical Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- Medical Informatics (AREA)
- Molecular Biology (AREA)
- Surgery (AREA)
- Cardiology (AREA)
- Pediatric Medicine (AREA)
- Gynecology & Obstetrics (AREA)
- Pregnancy & Childbirth (AREA)
- Reproductive Health (AREA)
- Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
Abstract
Description
Claims (13)
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
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US06/726,729 US4632122A (en) | 1985-04-24 | 1985-04-24 | Method and apparatus for conducting brain function diagnostic test |
US06/886,416 US4683892A (en) | 1985-04-24 | 1986-07-17 | Method and apparatus for conducting brain function diagnostic test |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US06/726,729 US4632122A (en) | 1985-04-24 | 1985-04-24 | Method and apparatus for conducting brain function diagnostic test |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US06/886,416 Division US4683892A (en) | 1985-04-24 | 1986-07-17 | Method and apparatus for conducting brain function diagnostic test |
Publications (1)
Publication Number | Publication Date |
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US4632122A true US4632122A (en) | 1986-12-30 |
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ID=24919764
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US06/726,729 Expired - Lifetime US4632122A (en) | 1985-04-24 | 1985-04-24 | Method and apparatus for conducting brain function diagnostic test |
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US (1) | US4632122A (en) |
Cited By (105)
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US4736751A (en) * | 1986-12-16 | 1988-04-12 | Eeg Systems Laboratory | Brain wave source network location scanning method and system |
WO1991009565A1 (en) * | 1989-12-22 | 1991-07-11 | Swinburne Limited | Equipment for testing or measuring brain activity |
US5119816A (en) * | 1990-09-07 | 1992-06-09 | Sam Technology, Inc. | EEG spatial placement and enhancement method |
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US5703787A (en) * | 1995-06-28 | 1997-12-30 | Fujitsu Limited | Wave analyzing apparatus and wave analyzing method |
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